English
新闻公告
More
化学进展 1996, Vol. 8 Issue (04): 293- 前一篇   后一篇

• 综述与评论 •

全球性环境污染物多氯联苯的结构-活性相关性研究进展*

苗秀生;储少岗;徐晓白**   

  1. (中国科学院生态环境研究中心 北京 100085)
  • 收稿日期:1995-12-01 修回日期:1996-07-01 出版日期:1996-12-24 发布日期:1996-12-24
  • 通讯作者: 徐晓白

Advances in the Research of Structure-Activity Relation ships for Polychlorinated Biphenyls

Miao Xiusheng;Chu Shaogang;Xu Xiaobai   

  1. (Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences, Beijing 100085, China)
  • Received:1995-12-01 Revised:1996-07-01 Online:1996-12-24 Published:1996-12-24
  • Contact: Xu Xiaobai

本文对全球性典型污染物——多氯联苯(PCBs) 的结构-活性相关性研究的最新成果进行了综述。给出了该类环境污染物的分组归类、结构特征与活性、毒性当量因子的应用和利用有关结构模型阐述毒性机理的研究进展, 并对将来的有关研究方向做了展望。

The research achievements concerning structure activity relation ships(SARs) of polychlorinated biphenyls (PCBs) are systematically reviewed. The researching methods of SARs, classification of PCB congeners, activities, the toxicity equivalence factors and reactivity models are discussed.

中图分类号: 

()

[1 ] Polychlorinated Biphenyls and Terphenyls (2ndedition) , Environmental Health Criteria 140, World Health Organizaton, Geneva, 1993, 23~ 24.
[2 ] Katsuki S, Fukuoka Acta Med. , 1969, 403~ 407.
[3 ] Bommanna G L , Kurunthachalam K, Ambio, 1994, 23 (3) , 181~ 185.
[4 ] Robinson P E, Mack G A , Remmers J , Levy R, Mohadjer L , Environ. Res. , 1990, 53, 175~ 192.
[5 ] Mes J , Environ. Pollut. , 1990, 65, 269~ 278.
[6 ] Abbott D C, Collins G B, Goulding R, Hoodles R A , Brit. Med. J. , 1981, 283, 1425~ 1428.
[7 ] Greve P A ,van Zoonen P, Int. J. Environ. Anal. Chem. , 1990, 38, 265~ 277.
[8 ] Loganathan B G, Tanabe S, Hidaka Y, Kawano M , Hidaka H, Tatsukawa R, Environ. Pollut. ,1993, 81, 31~ 39.
[9 ] Tanabe S, Environ. Pollut. , 1988, 50, 5~ 28.
[10 ] Yakushiji T , Rev. Environ. Contam. Toxicol. , 1988, 101, 139~ 164.
[11 ] Buhler F, Schmid P, Schlatter C H, Chemosphere, 1988, 17, 1717~ 1726.
[12 ] Alberl J Leo, The Scienceofthe Total Environ. , 1991, 109/1 10, 121~ 130.
[13 ] Parsons J R, Commandeur L C M ,van Eyseren H E, Govers H A J , The Science of the Total Environ. , 1991, 109/110, 275~ 281.
[14 ]van Haelst A , Govers H, The Scienceofthe Total Environ. , 1991, 109/110, 237~ 241.
[15 ] Waller C L , McKinney J D, J. Med. Chem. , 1992, 35 (20) , 3660~ 3666.
[17 ] Cramer R D, Patterson D E, Bunce J D, J. Am. Chem. Soc. , 1988, 110, 5959~ 5967.
[16 ] Cramer R D, Bunce J D, Patterson D E, Frank I E, Quant. Struct. 2Act. Relat. Pharmacol. Chem.Biol1, 1988, 7, 18~ 25.
[18 ] Egolf D S, Jurs P C, Anal. Chem. , 1990, 62, 1746~ 1754.
[19 ] Cody V , Environ. Health Perspect. , 1985, 61, 163~ 183.
[20 ] McFarland V A , Clarke J U , Environ. Health Perspect. , 1989, 81, 2225~ 2239.
[21 ] McKinney J D, Waller C, Environ. Health Perspect. , 1994, 102 (3) , 290~ 297.
[22 ] Safe S, Bandiera S, Sawyer T , Robertson L , Safe L , Parkinson A , Thomas P E, Ryan D E, Reik L M , Levin W , Denomme M A , Fujita T , Environ. Health Perspect. , 1985, 60, 47~ 56.
[23 ] Safe S, Environ. Health Perspect. , 1992, 100, 259~ 268.
[24 ] Clarke J U , Chemosphere, 1986, 15 (3) , 275~ 287.
[25 ] Parkinson A , Cockerline R, Safe S, Chem. -Biol. Interact. , 1980, 29, 277~ 289.
[26 ] Parkinson A , Robertson L , Safe L , Safe S, Chem. -Biol. Interact. , 1980, 30, 271~ 285.
[27 ] Parkinson A , Robertson L , Safe L , Safe S, Chem. -Biol. Interact. , 1981, 35, 1~ 12.
[28 ] Parkinson A , Safe S H, Robertson L W , Thomas P E, Ryan D E, Reik L M , Levin W , J. Biol.Chem. , 1983, 258 (9) , 5967~ 5976.
[29 ] Sassa S, Sugita D, Ohnuma N , Imajo S, Okumura T , Noguchi T , Kappas A , Biochem. J. , 1986,235, 291~ 300.
[30 ] McKinney J D, Gottschalk K E, Pedersen L , J. Mol. Structure, 1983, 104, 445~ 450.
[31 ] Poland A , Glover E, Mol. Pharmacol. , 1977, 13, 924~ 938.
[32 ] Bradlaw J A , Casterline J L , J. Assoc. Off . Anal. Chem. , 1979, 62~ 70.
[33 ] Tanabe S, Kannan N , Wakimoto T , Tatsukawa R, Okamoto T , Masuda Y, Toxicol. Environ.Chem. , 1989, 24, 215~ 231.
[34 ] Kannan N , Tanabe S, Ono M , Tatsukawa R, Arch. Environ. Contam. Toxicol. , 1989, 18, 850~857.
[35 ] Kannan N , Tanabe S, Tatsukawa R, Bull. Environ. Contam. Toxicol. , 1988, 41, 267~ 276.
[36 ] Kannan N , Tanabe S, Tatsukawa R, Arch. Environ. Health, 1988, 43, 11~ 14.
[37 ] Kannan N , Tanabe S, Wakimoto T , Tatsukawa R, J. Assoc. Off . Anal. Chem. , 1987, 70, 451~453.
[38 ] Ahlborg U G, Becking G C, Birnbaum L S, Brouwer A , Derks H J G M , Feeley M , Golor G, Hanberg A , Larsen J C, Liem A K D, Safe S H, Schlatter C, Waen F, Younes M , Yrjanheikki E,Chemosphere, 1994, 28, 1049~ 1067.
[39 ] Ahlborg U G, Chemosphere, 1989, 19, 603~ 608.
[40 ] Bellin J S, Barnes D G, Interim Procedures for Estimating Risk Associated with Exposuresto Mixtures of Chlorinated Dibenzo-p-Dioxinsand Dibenzofurans (CDDsand CD Fs) , 2nded. , U. S. EPA ,Washington, D C, 1989.
[41 ] Lau S, ZannoniV G, Mol. Pharmacol. , 1981, 20, 234~ 235.
[42 ] Boon J P, Reijnders P J H, Dols J , Wensvoort P, Hillebrand M T J , Aquant. Toxicol. , 1987, 10,307~ 324.
[43 ] Singh P, Pedersen L G, McKinney J D, Acta Cryst. , 1986, C42. 1172~ 1175.
[44 ] Romming Chr, Seip I M , Aanesen Oymo I M , Acta Chemica Scand. A 28, 1974, 507~ 514.
[45 ] Van Der Sluis P, Moes G W H, Behm H, Smykalla C, Beurskens P T , Lenstra A T H, Acta Cryst. ,1990, C46, 2169~ 2171.
[46 ] Carolyn P B, Kuo M S, Henri A L , Acta Cryst. , 1978, B 34, 981~ 985.
[47 ] 苗秀生, 中国科学院生态环境研究中心博士学位论文, 1996,p155~ 591
[48 ] Singh P, McKinney J D, Acta Cryst. , 1979, B 35, 259~ 262.
[49 ] Geise H J , Lenstra A T H, De Borst C, Moes G W H, Acta Cryst. , 1986, C42, 1176~ 1178.
[50 ] Charbonneau G P, Delugeard Y, Acta Cryst. , 1977, B 33, 1586~ 1588.
[51 ] Charbonneau G P, Delugeard Y, Acta Cryst. , 1976, B 32, 1420~ 1423.
[52 ] Trotter J , Acta Cryst. , 1961, 14, 1135~ 1140.
[53 ] Brock C P, Acta Crystallogr. , Sect. B : Struct. Crystallogr. Cryst. Chem. , 1980, 36, 968~ 971.
[54 ] Pedersen B F, Acta Cryst. , 1975, B 31, 2931~ 2933.
[55 ] McKinney J D, Gottschalk K E, Pedersen L , J. Mol. Struct. , 1983, 104, 445~ 450.
[56 ] McKinney J D, Singh P, Acta Cryst. , 1988, C44, 558~ 569.
[57 ] Mannila E, Kolehmainen E, Rissanen K, Acta Chemica Scand. , 1994, 48, 684~ 688.
[58 ] Stolevik R, Thingstad O , J. Mol. Struct. , 1984, 106, 333~ 353.
[59 ] Poland A , Knutson J C, Annu. Rev. Pharmacol. Toxicol. , 1982, 22, 517~ 554.
[60 ] Gillner M , Bergman J , Cambillau C, Fernstrom B, Gustafsson J A , Mol. Pharmacol. , 1985, 28,357~ 363.
[61 ] Cheney B V , Tolly T , Int. J. Quant. Chem. , 1979, 16, 87~ 110.
[62 ] Sjoberg P, Murray J S, Brinck T , Evans P, Politzer P, J. Mol. Graphics, 1990, 8, 81~ 90.
[63 ] Cody V , Endocrine Rev. , 1980, 1, 140~ 166.
[64 ] Korach K S, Sarver P, Chae K, McLachlan J A , McKinney J D, Mol. Pharmacol. 1988, 33, 120~126.
[65 ] McKinney J D, Pedersen L , Biochem. J. , 1986, 240, 621~ 622.
[66 ] Freyschuss B, Steroid. Biochem. , 1988, 31, 247~ 249.
[67 ] Jansen H T , Cooke P S, Porcelli J , Liu T C, Reprod. Toxicol. , 1993, 7, 237~ 248.
[68 ] White T E K, Gasiewicz T A , Biochem. Biophys. Res. Commun. , 1993, 193, 956~ 962.
[69 ] Waller C L , Minor D L , McKinney J D, Environ. Health Perspect. , 1995, 103, 702~ 707.
[70 ] Birbaum L S, Environ. Health Perspect. , 1994, 102, 676~ 679.
[71 ] Bergeron J M , David Crews, McLachlan J A , Environ. Health Perspect. , 1994, 102, 780~ 781.

[1] 张巍, 谢康, 汤云灏, 秦川, 成珊, 马英. 过渡金属基MOF材料在选择性催化还原氮氧化物中的应用[J]. 化学进展, 2022, 34(12): 2638-2650.
[2] 朱本占, 张静, 唐苗, 黄春华, 邵杰. 致癌性卤代醌类消毒副产物造成 DNA 损伤的分子机理研究[J]. 化学进展, 2022, 34(1): 227-236.
[3] 张雨竹, 詹菁, 刘倩, 周群芳, 江桂斌. 大气细颗粒物引发的神经毒性和分子机理[J]. 化学进展, 2021, 33(5): 713-725.
[4] 赵超, 蔡宗苇. 基于质谱成像和组学分析的环境毒理研究[J]. 化学进展, 2021, 33(4): 503-511.
[5] 朱本占, 沈忱, 盛治国. 膜受体介导双酚A低剂量内分泌干扰效应的分子机制[J]. 化学进展, 2019, 31(1): 167-179.
[6] 张冰洁, 刘倩, 周群芳, 张建清, 江桂斌. 纳米银的神经毒理学效应[J]. 化学进展, 2018, 30(9): 1392-1402.
[7] 王亚韡, 王莹, 江桂斌. 短链氯化石蜡的分析方法、污染现状与毒性效应[J]. 化学进展, 2017, 29(9): 919-929.
[8] 李忠民, 郭良宏. 氟调醇的环境污染与毒理学研究[J]. 化学进展, 2016, 28(7): 993-1005.
[9] 向垒, 孙腾飞, 莫测辉, 李彦文, 蔡全英, 李慧. 季铵盐类化合物环境问题研究进展[J]. 化学进展, 2016, 28(5): 727-736.
[10] 李阳, 牛军峰, 张驰, 王正早, 郑梦源, 商恩香. 水中金属纳米颗粒对细菌的光致毒性机理[J]. 化学进展, 2014, 26(0203): 436-449.
[11] 吴一萍, 郭良宏. DNA损伤的光电化学传感器检测[J]. 化学进展, 2014, 26(01): 1-9.
[12] 江龙, 王清叶, 崔文娟. 金纳米颗粒的细胞毒性和促细胞生长作用[J]. 化学进展, 2013, 25(10): 1631-1641.
[13] 吕继涛, 张淑贞*. 人工纳米材料与植物的相互作用: 植物毒性、吸收和传输[J]. 化学进展, 2013, 25(01): 156-163.
[14] 卢学毅, 廖世军, 宋慧宇*. 高活性、高抗毒性的甲酸燃料电池阳极催化剂[J]. 化学进展, 2012, 24(08): 1437-1446.
[15] 李卓娜, 周群芳, 刘稷燕, 史亚利, 蔡亚岐, 江桂斌. 多环麝香(PCMs)的环境行为及毒性效应[J]. 化学进展, 2012, 24(04): 606-615.